Cha H J, Wu C F, Valdes J J, Rao G, Bentley W E
Center for Agricultural Biotechnology, University of Maryland Biotechnology Institute, College Park, Maryland 20742, USA.
Biotechnol Bioeng. 2000 Mar 5;67(5):565-74.
We have constructed three plasmid vectors for the expression of green fluorescent protein (GFP) fusion proteins using the following motif: (His)(6)-GFP-EK-X, where X represents chloramphenicol acetyl-transferase (CAT), human interleukin-2 (hIL-2), and organophosphorous hydrolase (OPH), respectively, (His)(6) represents a histidine affinity ligand for purification, and EK represents an enterokinase cleavage site for recovering the protein-of-interest from the fusion. The CAT and OPH fusion products ( approximately 63 kDa GFP/CAT and approximately 70 kDa GFP/OPH) were expressed at 4.85 microg/mL (19.9 microg/mg-total protein) and 1.42 microg/mL (4.2 microg/mg-total protein) in the cell lysis supernatant, and, in both cases, enzymatic activity was retained while coupled to GFP. In the case of hIL-2 fusion ( approximately 52 kDa), however, the GFP fluorescence was significantly reduced and most of the fusion was retained in the cell pellet. Linear relationships between GFP fluorescence and CAT or OPH concentration, and with enzymatic activity of CAT or OPH, indicated, for the first time, that in vivo noninvasive quantification of proteins-of-interest, was made possible by simple measurement of GFP fluorescence intensity. The utility of GFP as a reporter was not realized without disadvantages however, in particular, an incremental metabolic cost of GFP was found. This could be offset by many benefits foreseen in expression and purification efficiencies.
我们构建了三种用于表达绿色荧光蛋白(GFP)融合蛋白的质粒载体,使用以下基序:(His)(6)-GFP-EK-X,其中X分别代表氯霉素乙酰转移酶(CAT)、人白细胞介素-2(hIL-2)和有机磷水解酶(OPH),(His)(6)代表用于纯化的组氨酸亲和配体,EK代表用于从融合蛋白中回收目标蛋白的肠激酶切割位点。CAT和OPH融合产物(约63 kDa的GFP/CAT和约70 kDa的GFP/OPH)在细胞裂解上清液中的表达量分别为4.85 μg/mL(19.9 μg/mg总蛋白)和1.42 μg/mL(4.2 μg/mg总蛋白),并且在这两种情况下,与GFP偶联时均保留了酶活性。然而,对于hIL-2融合蛋白(约52 kDa),GFP荧光显著降低,并且大部分融合蛋白保留在细胞沉淀中。GFP荧光与CAT或OPH浓度以及CAT或OPH酶活性之间的线性关系首次表明,通过简单测量GFP荧光强度就可以对目标蛋白进行体内无创定量。然而,GFP作为报告基因的实用性并非没有缺点,特别是发现了GFP增加的代谢成本。这可以通过在表达和纯化效率方面预见的许多益处来抵消。